提高SMIB系统中高阶同步发电机暂态稳定性的鲁棒部分反馈线性化励磁控制器设计

M. Pramanik, T. K. Roy, S. K. Ghosh, M. S. Anower, M. A. Mahmud
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引用次数: 6

摘要

为了提高单机无限母线(SMIB)电力系统的暂态稳定性,针对同步发电机设计了一种鲁棒部分反馈线性化励磁控制器。考虑了同步发电机的七阶动力学模型以及IEEE ii型励磁器的动态特性,设计了鲁棒励磁控制器。在控制器设计过程中考虑了与参数和状态相关的不确定性,并对这些不确定性进行了限定,以满足匹配条件。此外,在系统模型中加入了测量噪声,通过所提出的控制方案对测量噪声进行解耦,保证了系统对这些噪声的鲁棒性。采用部分反馈线性化方法将非线性动力学模型转化为部分线性系统,并利用该系统设计同步发电机辅助励磁控制输入。分析了SMIB系统在大扰动下的励磁控制性能,并与传统电力系统稳定器(PSS)进行了比较研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust Partial Feedback Linearizing Excitation Controller Design for Higher-Order Synchronous Generator in SMIB Systems to Improve the Transient Stability
In this paper, a robust partial feedback linearizing excitation controller is designed for synchronous generators to enhance the transient stability of single machine infinite bus (SMIB) power systems. The seventh-order dynamical model of synchronous generators including dynamic characteristics of IEEE Type-II exciters are taken into consideration to design this robust excitation controller. Uncertainties associated with both parameters and states are taken into account during the controller design while bounding these uncertainties such that matching conditions are satisfied. In addition, measurement noises are incorporated within the system model which are decoupled through the proposed control scheme and the robustness is ensured through against these noises. The partial feedback linearization method is employed to transform the nonlinear dynamical model into a partially linear system which is then used to design the auxiliary excitation control input for the synchronous generator in an SMIB system. The performance of the proposed excitation control scheme is analyzed on an SMIB system following large disturbances including a comparative study with a conventional power system stabilizer (PSS).
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